microRNA-499对心脏CACNB2的调控:在房颤中的潜在作用

Tian-You Ling, Xiao-Li Wang, Qiang Chai, Tong Lu, John M. Stulak, Lyle D. Joyce, Richard C. Daly, Kevin L. Greason, Li-Qun Wu, Win-Kuang Shen, Yong-Mei Cha, Hon-Chi Lee
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引用次数: 39

摘要

l型钙离子通道(LTCC)是已知与心房颤动(AF)电重构相关的主要离子通道之一。在AF中,LTCC显著下调,但这种下调的潜在机制尚不清楚。我们之前报道过,microRNA-499 (miR-499)在永久性房颤患者中显著上调,而编码小电导钙活化钾通道3 (SK3)的基因KCNN3是miR-499的靶标。我们发现,LTCC的一个重要亚基CACNB2也是miR-499的靶标。我们假设miR-499通过调节CACNB2和LTCC的表达在心房电重构中发挥重要作用。在永久性房颤患者的心房组织中,CACNB2显著下调67% (n = 4, p <将miR-499 mimic转染到小鼠增殖性心房心肌细胞系HL-1细胞中,导致CACNB2蛋白表达下调,而miR-499抑制剂则上调CACNB2蛋白表达。通过荧光素酶报告基因检测和转染miR-499模拟物后Argonaute下拉microrna诱导的沉默复合物中CACNB2 mRNA的增加,证实了miR-499与CACNB2 3 '非翻译区结合。此外,CACNB2下调导致成孔α-亚基(CACNA1C)蛋白水平下调。综上所述,心房miR-499上调可诱导CACNB2表达下调,并可能参与心房颤动的电重构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Regulation of cardiac CACNB2 by microRNA-499: Potential role in atrial fibrillation

The L-type calcium channel (LTCC) is one of the major ion channels that are known to be associated with the electrical remodeling of atrial fibrillation (AF). In AF, there is significant downregulation of the LTCC, but the underlying mechanism for such downregulation is not clear. We have previously reported that microRNA-499 (miR-499) is significantly upregulated in patients with permanent AF and that KCNN3, the gene that encodes the small-conductance calcium-activated potassium channel 3 (SK3), is a target of miR-499. We found that CACNB2, an important subunit of the LTCC, is also a target of miR-499. We hypothesize that miR-499 plays an important role in AF electrical remodeling by regulating the expression of CACNB2 and the LTCC. In atrial tissue from patients with permanent AF, CACNB2 was significantly downregulated by 67% (n = 4, p < 0.05) compared to those from patients with no history of AF. Transfection of miR-499 mimic into HL-1 cells, a mouse hyperplastic atrial cardiac myocyte cell-line, resulted in the downregulation of CACNB2 protein expression, while that of miR-499 inhibitor upregulated CACNB2 protein expression. Binding of miR-499 to the 3′ untranslated region of CACNB2 was confirmed by luciferase reporter assay and by the increased presence of CACNB2 mRNA in Argonaute pulled-down microRNA-induced silencing complexes after transfection with the miR-499 mimic. In addition, downregulation of CACNB2 resulted in the downregulation of protein levels of the pore-forming α-subunit (CACNA1C). In conclusion, upregulation of atrial miR-499 induces the downregulation of CACNB2 expression and may contribute to the electrical remodeling in AF.

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